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Evolution of programmed DNA rearrangements in a scrambled gene.

Gene unscrambling in spirotrichous ciliates involves massive genome-wide DNA deletion and rearrangement events during development. During each sexual cycle, the somatic nucleus (macronucleus) regenerates from the germ line nucleus (micronucleus). Development of the polyploid somatic genome requires programmed DNA deletion of micronuclear-limited intragenic noncoding sequences and permutation and amplification of the protein-coding regions. Recent studies suggest that, despite novel insertions of endogenous transposon or foreign DNA into the germ line genome, ciliates possess a whole-genome surveillance system that guides the recapitulation of a functional somatic genome. This renders the germ line genome an extremely dynamic structure over evolutionary time. Here we describe the germ line and somatic architectures of the gene encoding alpha-telomere-binding protein in three early-diverging species (Holosticha sp., Uroleptus sp., and Paraurostyla weissei) and trace the natural history of DNA rearrangements in this gene in six species, including three previously studied oxytrichids. Comparisons of homologous coding regions between earlier and later diverging species provide evidence for fusion of scrambled germ line fragments as small as 24 bp during evolution, as well as simultaneous fragmentation and scrambling of the germ line locus and shifting of the boundaries between coding and noncoding DNA, leading to distinct gene architectures in each species. We infer an evolutionary recombination pathway that passes through identified intermediate species and gives rise to the observed patterns in all known species, capitalizing on their unique DNA rearrangement machinery and germ line flexibility.

Animals↗

Spiralin, a mycoplasmal membrane lipoprotein, induces T-cell-independent B-cell blastogenesis and secretion of proinflammatory cytokines.

Mycoplasmas are bacteria which can cause respiratory, arthritic, and urogenital diseases. During the early phase of infection, mycoplasmas usually induce an inflammatory response and a humoral response preferentially directed against their membrane-bound, surface-exposed lipoproteins. In this report, we describe the effects on immune cells of spiralin, a well-characterized mycoplasmal lipoprotein. Purified spiralin stimulated the in vitro proliferation of human peripheral blood mononuclear cells and murine splenocytes. The stimulation pathway was probably different from that followed by Escherichia coli lipopolysaccharide because the effect of spiralin was not abolished by polymyxin B. Comparison of the effects of whole, native spiralin with those induced by proteinase K-digested spiralin or by the C-terminal half of spiralin (peptide p[13.5]T) revealed that the first half of the protein, which contains the lipoylated N terminus, is responsible for the mitogenic activity. In contrast to whole spiralin, proteinase K-digested spiralin did not trigger murine B-cell differentiation and immunoglobulin G and M secretion. Stimulation of human or murine immune cells led to early secretion of proinflammatory cytokines (human tumor necrosis factor alpha and murine interleukin 1 or 6). Spiralin induced the T-cell-independent blastogenesis of murine B cells but did not stimulate T cells. Altogether, our data demonstrate that spiralin possesses potent immunostimulating activity, similar to that reported for lipoproteins of pathogenic gracilicutes (gram-negative eubacteria; e.g., Borrelia burgdorferi OspA and E. coli Braun lipoprotein), and are consistent with the fact that lipoproteins are major antigens during mycoplasma infections.

Animals↗

Etiologic studies on late-term swine abortions.

One hundred thirty-eight swine abortions were studied in detail in an effort to identify an etiologic agent. A viral agent was implicated in 7 cases. Bacteria were isolated in less than half of the examined cases: however, in 61% of the cases, motile, filamentous organisms were observed in tissues and fluids. Although swine sera from farms experiencing reproductive problems had a high reactor rate to Leptospira bratislava antigen, electron microscopy of the observed organism revealed a wall-free prokaryote morphologically typical of the class Mollicutes.

Abortion, Veterinary↗

Xylanase production by the thermophilic mold Humicola lanuginosa in solid-state fermentation.

Among the lignocellulosic substrates tested, wheat bran supported a high xylanase (EC 3.2.1.8) secretion by Humicola lanuginosa in solid-state fermentation (SSF). Enzyme production reached a peak in 72 h followed by a decline thereafter. Enzyme production was very high (7832 U/g of dry moldy bran) when wheat bran was moistened with tap water at a substrate--to--moistening agent ratio of 1:2.5 (w/v) and an inoculum level of 3 x 106 spores/10 g of wheat bran at a water activity (aw) of 0.95. Cultivation of the mold in large enamel trays yielded a xylanase titer comparable with that in flasks. Parametric optimization resulted in a 31% increase in enzyme production in SSF. Xylanase production was approx 23-fold higher in SSF than in submerged fermentation (SmF). A threshold constitutive level of xylanase was secreted by H. lanuginosa in a medium containing glucose as the sole carbon source. The enzyme was induced by xylose and xylan. Enzyme synthesis was repressed beyond 1.0% (w/v) xylose in SmF, whereas it was unaffected up to 3.0% (w/w) in SSF, suggesting a minimization of catabolite repression in SSF.

Bioreactors↗

Bacterial pyruvate kinases have a shorter N-terminal domain.

The N-terminal portions of the two forms of pyruvate kinase (EC2.7.1.40) from Escherichia coli have been sequenced up the 48th and 43rd residue, respectively. Comparison with the known primary structures shows that bacterial enzymes lack a substantial portion of the N-terminal sequence with respect to pyruvate kinases from vertebrates. This makes the suggested functional role of the N-terminal domain unlikely [Muirhead, H. (1990) Biochem. Soc. Trans. 18, 193-196] although an elongation of this domain with evolution is apparent.

Amino Acid Sequence↗

Lipoglycans from mycoplasmas.

Lipoglycans , distinguishable from bacterial lipopolysaccharides, are associated with the cytoplasmic membranes of several genera of Mollicutes, namely Acholeplasma, Mycoplasma neurolyticum , Anaeroplasma , and Thermoplasma. Structurally, the lipoglycans are long heteropolysaccharides covalently linked to a lipid. The exact structures of three have been determined. Thermoplasma oligosaccharide is attached to a diglycerol tetraether ; A. granularum to a diacyl glycerol. The lipoglycan from A. axanthum is unique by its possession of glycerol phosphate and galactose phosphate side chains and the occurrence of fatty acids in N-acyl linkages. Only one molecular species of lipoglycan occurs in a given species. These lipoglycans possess a variety of biological activities. The terminal three sugar residues define their antigenic specificity; they attach to specific receptors on mammalian cells; they exhibit pyrogenicity in rabbits and clot Limulus lysate; they stimulate the production of IgM antibody both in vivo and in vitro; they modulate the immune response to T-cell dependent antigens; they exhibit immunosuppressive and immunostimulatory activities.

Acholeplasma↗

Ocular pathology induced by the suckling mouse cataract agent.

The eye disease caused by SMCA may be best characterized as an endophthalmitis, with early retinitis followed by subsequent posterior uveitis. Pathologic features of lens included: proliferation and abnormal posterior extension of lens epithelium, increased accumulation of lens capsule material, and production of aberrant lens substance. Cataractous change appears to be secondary to intraocular inflammation. In addition to the above pattern, in roughly 20 per cent of all cases, 3 weeks after inoculation, lens capsule is destroyed giving rise to a foreign body granulomatous reaction.

Animals↗

Characterization of the mycoplasma genome.

Recent advances on the properties of the mycoplasma genome, including size, base composition, replication, extrachromosomal DNA, and transfer of genetic material are briefly reviewed, with emphasis on their phylogenetic implications. The use of cleavage patterns of the mycoplasma genome by restriction endonucleases as "finger-prints" indicating genetic relatedness among strains is discussed. The data support the notion that strains of mycoplasma species of strict host and tissue specificity exhibit marked genetic homogeneity, suggesting a clonal origin for some species. The regions of the mycoplasma genome carrying the ribosomal RNA (rRNA) genes have been studied using restriction endonucleases, cloning, and hybridization procedures. The mycoplasmal rRNA cistrons cross-hybridized among themselves, and with the seven rRNA cistrons of Escherichia coli, demonstrating the marked conservation of structure during evolution of this part of the procaryotic genome. In most of the mollicutes tested so far the number of rRNA cistrons is two, but a few species appear to carry only one rRNA cistron in their genome.

Acholeplasma↗

Mycoplasma evolution: a review of the use of ribosomal and transfer RNA nucleotide sequences in the determination of phylogenetic relationships.

Comparison of the nucleotide sequences of "structural" RNAs (ribosomal and transfer RNA) has enabled the construction of phylogenetic trees to be achieved. Data from 16S rRNA, 5S rRNA, and tRNA from a total of eight Mollicutes (excluding T. acidophilum) including representatives of the families Mycoplasmataceae, Spiroplasmataceae, and Acholeplasmataceae, show that these families share a close relationship and a common ancestor with the gram-positive eubacteria. Thermoplasma acidophilum is a member of the kingdom Archaebacteriae and has no relationship to the other Mollicutes.

Base Sequence↗

Lipid tracers of mycoplasma phylogeny.

Comparison of the lipid composition between members of the Mycoplasmatales reveals a striking diversity of lipid structures, not only between the six genera but among species within the same genus. This is in contrast to nearly all other bacterial groups in which members of the same genus possess essentially the same lipids. There are in fact more similarities between lipids of a given species of mycoplasma and a genus of bacterium than there are between lipids of a given species of mycoplasma and a genus of bacterium than there are between mycoplasma species. Mycoplasmal lipids suggest that these organisms do not represent a phylogenetically related group at all, but are probably degenerative forms of bacteria, particularly gram-positive bacteria, which have lost the ability to synthesize a cell wall.

Acholeplasma↗

Reconstruction of metabolic networks using incomplete information.

This paper describes an approach that uses methods for automated sequence analysis (Gaasterland et al. August 1994) and multiple databases accessed through an object+attribute view of the data (Baehr et al. 1992), together with metabolic pathways, reaction equations, and compounds parsed into a logical representation from the Enzyme and Metabolic Pathway Database (Selkov, Yunus, & et.al. 1994), as the sources of data for automatically reconstructing a weighted partial metabolic network for a prokaryotic organism. Additional information can be provided interactively by the expert user to guide reconstruction.

Algorithms↗

[A new culicid in Italy: Aedes (Ochlerotatus) annulipes (Diptera, Culicidae)].

The first italian record of Aedes annulipes is described. The species was collected in various sites of the eastern Po-Venetian valley (North-eastern Italy), from sea level up to 190 m a.s.l. The larval breeding sites were seasonal fresh water marshes within woods. Preimaginal development took place from February to May. Ae. annulipes was univoltine with a possible second minor generation. The females were strongly anthropophilic. Main morphological data are provided and compared with those of the close species Ae. cantans. The adaptation to environments south of Alps and even at sea level by a northern palearctic element such as Ae. annulipes is presumably achieved by the exploitation of sufficiently cold biotopes available for larval breeding during the winter-spring period.

Aedes↗